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首页> 外文期刊>Nature Communications >Plant tumour biocontrol agent employs a tRNA-dependent mechanism to inhibit leucyl-tRNA synthetase
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Plant tumour biocontrol agent employs a tRNA-dependent mechanism to inhibit leucyl-tRNA synthetase

机译:植物肿瘤生物防治剂采用tRNA依赖性机制抑制亮氨酰tRNA合成酶

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Leucyl-tRNA synthetases (LeuRSs) have an essential role in translation and are promising targets for antibiotic development. Agrocin 84 is a LeuRS inhibitor produced by the biocontrol agent Agrobacterium radiobacter K84 that targets pathogenic strainsof A. tumefaciens, the causative agent of plant tumours. Agrocin 84 acts as a molecular Trojan horse and is processed inside the pathogen into a toxic moiety (TM84). Here we show using crystal structure, thermodynamic and kinetic analyses, that this natural antibiotic employs a unique and previously undescribed mechanism to inhibit LeuRS. TM84 requires tRNALeu for tight binding to the LeuRS synthetic active site, unlike any previously reported inhibitors. TM84 traps the enzyme-tRNA complex in a novel 'aminoacylation-like' conformation, forming novel interactions with the KMSKS loop and the tRNA 3'-end. Our findings reveal an intriguing tRNA-dependent inhibition mechanism that may confer a distinct evolutionary advantage in vivo and inform future rational antibiotic design.
机译:Leucyl-tRNA合成酶(LeuRSs)在翻译中起着至关重要的作用,并且是抗生素开发的有希望的目标。 Agrocin 84是一种由生物防治剂农杆菌K84生产的LeuRS抑制剂,其针对植物土壤病原体根癌农杆菌的致病菌株。 Agrocin 84充当分子特洛伊木马,并在病原体内部被加工成有毒部分(TM84)。在这里,我们使用晶体结构,热力学和动力学分析表明,这种天然抗生素采用独特且以前未描述的机制来抑制LeuRS。与以前报道的抑制剂不同,TM84需要tRNALeu才能与LeuRS合成活性位点紧密结合。 TM84以新颖的“氨基酰化样”构型捕获酶-tRNA复合物,与KMSKS环和tRNA 3'末端形成新的相互作用。我们的发现揭示了一种有趣的tRNA依赖性抑制机制,该机制可能在体内赋予独特的进化优势,并为将来合理的抗生素设计提供依据。

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